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Optical Sensors for the Determination of Concentrated Hydroxide. Characterization of the Sensor Materials and Evaluation of the Sensor Performance

机译:用于测定浓氢氧化物的光学传感器。传感器材料的表征和传感器性能评估

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摘要

Optical sensors for the determination of highly concentrated bases such as NaOH (1-10 M) and materials to make these sensors have been characterized by X-ray photoelectron spectroscopy, ~(29)Si solid-state NMR, FT-IR, and measurements of film porosity, surface area, and thickness. The bonding character and composition of the Si-Zr mixed oxides-organic polymer composites were evaluated. These studies suggest that there are Si-O-Zr matrixes in the mixed oxides, and that the Si-O-Zr matrixes contribute to the durability of the base sensors in highly alkaline solutions. The performance of these base sensors has been studied in detail as well. These sensors were stable for approximately 120 days, exhibited short response times (typically <10 s), and were fully reversible with minimal hysteresis effects in NaOH-ROH-H_(2)O solutions (R=Me, Et, and i-Pr).
机译:用于测定高浓度碱(例如NaOH(1-10 M))的光学传感器和制造这些传感器的材料已通过X射线光电子能谱,〜(29)Si固态NMR,FT-IR和测量进行了表征膜的孔隙率,表面积和厚度。评价了Si-Zr混合氧化物-有机聚合物复合材料的结合特性和组成。这些研究表明,混合氧化物中存在Si-O-Zr基体,并且Si-O-Zr基体有助于碱性传感器在高碱性溶液中的耐久性。这些基础传感器的性能也已进行了详细研究。这些传感器可稳定运行约120天,表现出较短的响应时间(通常<10 s),并且在NaOH-ROH-H_(2)O溶液(R = Me,Et和i-Pr)中具有最小的磁滞效应,可完全逆转)。

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